Postdoctoral Research Associate, Neuroscience

UNIVERSITY OF ARIZONA

Tucson (AZ)

On-site

USD 65,000 - 90,000

Full time

5 days ago
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Benefits offered by this job

Health insurance
Paid vacation
Tuition reduction

Job summary

The University of Arizona invites applications for a Postdoctoral Research Associate in Neuroscience to develop theoretical and computational frameworks for neural network dynamics, focusing on inhibitory control of state transitions. Candidates from quantitative fields will work with experimentalists and access rich electrophysiological data and behavior.

Applicants should have a PhD in a quantitative discipline and strong skills in mathematical modeling and programming.

Qualifications

  • PhD or equivalent in engineering, applied mathematics, physics, computational neuroscience, computer science, quantitative biology, or related quantitative field by start date.
  • Demonstrated research experience in mathematical modeling, computational analysis, dynamical systems, control, or closely related area.
  • Evidence of ability to conduct rigorous independent research.

Responsibilities

  • Develop mathematical, computational, and/or control-theoretic models of recurrent neural dynamics.
  • Analyze large-scale electrophysiological and behavioral datasets and relate to model predictions.
  • Use perturbations to distinguish mechanistic models and identify governing variables.
  • Investigate stability, metastability, attractor structure, controllability, and state transitions.
  • Collaborate closely with experimental neuroscientists to design analyses and tests of predictions.
  • Present findings at meetings and contribute to publications.

Skills

Quantitative reasoning
Nonlinear dynamics
Control theory
Programming (Python)
Programming (MATLAB)
Programming (Julia)
Programming (C/C++)
Independent research

Education

PhD or equivalent by start date

Tools

Python
MATLAB
Julia
C/C++

Job description

Postdoctoral Research Associate, Neuroscience

Posting Number req27102


Department Neuroscience


Department Website Link https://neurosci.arizona.edu/


Location Tucson Campus


Address Tucson, AZ USA


Position Highlights

The Maurer laboratory at the University of Arizona is seeking a postdoctoral research associate to develop theoretical and computational approaches for understanding how biological neural networks organize activity through nonlinear dynamics, feedback, and constraint. A central question is how inhibitory circuitry reshapes the set of states and transitions available to a recurrent network: not simply by reducing excitation, but by dynamically restricting, routing, and stabilizing trajectories through neural state space. We are interested in whether relatively low-dimensional inhibitory or feedback control signals can reorganize high-dimensional activity, alter attractor structure and metastability, regulate transitions among network states, and make flexible computation possible in circuits that would otherwise be unstable or chaotic.


The position is intentionally interdisciplinary. We welcome candidates from control theory, nonlinear dynamical systems, applied mathematics, electrical or biomedical engineering, physics, computational science, and related quantitative fields. Prior neuroscience experience is not required. The researcher will work closely with experimental neuroscientists and have access to rich electrophysiological datasets including neuronal spiking, local field potentials, EEG, behavior, and circuit perturbations. The goal is not merely to fit models to neural data, but to develop mechanistic frameworks that generate discriminating predictions and can be tested against experimental interventions.


The Department of Neuroscience at the University of Arizona advances education and research across the interdisciplinary field of neuroscience, encompassing areas such as nervous system development and physiology, behavior, genetics, pharmacology, computational modeling, and neurological and psychiatric diseases. Faculty contribute to a collaborative neuroscience community across the University and actively engage in the interdisciplinary graduate program in Neuroscience and the undergraduate major in Neuroscience and Cognitive Science.


OutstandingUA benefits include health, dental, vision, and life insurance; paid vacation, sick leave, and holidays; UA/ASU/NAU tuition reduction for the employee and qualified family members; access to UA recreation and cultural activities; and more!


The University of Arizona has been recognized for our innovative work-life programs. For more information about working at the University of Arizona and relocation services, please visit talent.arizona.edu


Duties & Responsibilities


  • Develop mathematical, computational, and/or control-theoretic models of recurrent neural dynamics, with particular emphasis on how inhibition and feedback constrain reachable network states and transitions.

  • Analyze large-scale electrophysiological and behavioral datasets and connect model predictions to neuronal spiking, population activity, local field potentials, EEG, and behavior.

  • Use experimental perturbations to distinguish among competing mechanistic models and identify the variables or constraints that govern network organization.

  • Investigate stability, metastability, attractor structure, controllability, state transitions, system identification, and reduced-order descriptions of neural activity.

  • Collaborate closely with experimental neuroscientists to design analyses and experiments that provide strong tests of theoretical predictions.

  • Present findings at scientific meetings, prepare manuscripts for peer-reviewed publication, and contribute to an interdisciplinary research environment.


Knowledge, Skills, and Abilities


  • Strong quantitative reasoning and the ability to formulate biological questions as tractable mathematical or computational problems.

  • Knowledge of nonlinear dynamical systems, control theory, network dynamics, state-space methods, system identification, stochastic processes, or related quantitative approaches.

  • Ability to develop, simulate, and critically evaluate mechanistic models rather than relying solely on descriptive data analysis.

  • Scientific programming ability in Python, MATLAB, Julia, C/C++, or an comparable environment.

  • Ability to work independently while communicating effectively across disciplinary boundaries.

  • Strong written and oral scientific communication skills.


Minimum Qualifications


  • PhD or equivalent doctoral degree in engineering, applied mathematics, physics, computational neuroscience, computer science, quantitative biology, or a related quantitative discipline by the start date.

  • Demonstrated research experience in mathematical modeling, computational analysis, dynamical systems, control, or a closely related area.

  • Evidence of the ability to conduct rigorous independent research.


Preferred Qualifications


  • Experience with nonlinear dynamics.

  • Experience with control theory and feedback systems.

  • Experience with bifurcation or stability analysis.

  • Experience with attractor and metastable dynamics.

  • Experience with controllability and observability.

  • Experience with state-space modeling.

  • Experience with system identification.

  • Experience with reduced-order modeling.

  • Experience with recurrent, reservoir, echo-state, liquid-state, or chaotic neural networks.

  • Experience with network dynamics.

  • Experience with time-series analysis.

  • Experience with stochastic processes.

  • Experience with computational modeling of biological systems.

  • Experience with analysis of electrophysiological data.

  • Experience translating theoretical models into experimentally testable predictions.


FLSA

Exempt


Full Time/Part Time Full Time


Number of Hours Worked per Week 40


Job FTE 1.0


Work Calendar Fiscal


Job Category Research


Benefits Eligible Yes - Full Benefits


Rate of Pay

NIH salary guidelines, Depends on Experience.


Compensation Type salary at 1.0 full-time equivalency (FTE)


Type of criminal background check required: Name-based criminal background check (non-security sensitive)


Contact Information for Candidates

Andrew "Drew" Maurer
Associate Professor, Neuroscience
drew@arizona.edu

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